L shape equal channel reciprocating extrusion die for preparing ultra-fine crystal material

A technology of reciprocating extrusion and equal channels, applied in the direction of metal extrusion dies, etc., can solve the problems of large plastic deformation of unfavorable magnesium alloys, inconvenient disassembly of molds, and no temperature control device, etc., to achieve improved production efficiency, simple structure, and easy processing easy effect

Inactive Publication Date: 2008-09-10
SHANGHAI JIAO TONG UNIV
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  • Abstract
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  • Claims
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Problems solved by technology

③The refinement ability is strong, and the grain size of the material processed by this process is about 100nm~200nm; however, the biggest disadvantage of this technology is that the production eff...

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  • L shape equal channel reciprocating extrusion die for preparing ultra-fine crystal material

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Embodiment Construction

[0018] The embodiments of the present invention are described in detail below in conjunction with the accompanying drawings: this embodiment is implemented on the premise of the technical solution of the present invention, and detailed implementation methods and specific operating procedures are provided, but the protection scope of the present invention is not limited to the following the described embodiment.

[0019] Such as figure 1 As shown, this embodiment is divided into upper and lower parts, the lower part includes: lower bottom plate 1, slide plate 3, die cushion block 4, die outer ring 5, die inner ring 6, and the upper part includes: guide plate 7, discharge screw 8. Spring 9, punch fixing plate 10, punch pad 11, upper bottom plate 12, punch 15. It also includes two connecting bolts 2,13 and pins 14,17.

[0020] The lower die inner ring 6 and the die outer ring 5 are connected by shrink fitting. The die outer ring 5 is connected to the lower base plate 1 through...

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Abstract

A reciprocated extrusion die for preparing the L-shaped channels of superfine materials belongs to the machine processing field. The invention comprises an upper part and a lower part; the lower part comprises a lower bottom plate, a slide plate, a cavity die and a cavity die cushion block; the upper part comprises a guide plate, a convex die, a convex die fixing plate, a convex die cushion block, an upper bottom plate, a spring and a discharge bolt; wherein, the cavity die is composed by connecting an inner ring and an outer ring; the squeezing die cavity of L-shaped channels is arranged in the cavity die; the outer ring is connected with the bottom plate; the cavity die cushion block is arranged between the inner ring and the lower bottom plate; the slide plate is arranged on the cavity die cushion block; the upper end of the convex die passes through the central hole of the convex die fixing plate and is fixed; the lower end passes through the central hole of the guide plate; the convex die fixing plate is connected with the bottom plate; the convex die cushion block is arranged between the convex die and the upper bottom plate; and the guide plate is connected with the upper through a discharge bolt which passes through the spring in the hole of the convex die fixing plate. The extrusion die has the simple structure, the high grain refining capacity and the convenient operation and realizes continuous production.

Description

technical field [0001] The invention relates to a die in the technical field of mechanical processing, in particular to a semi-continuous equal-channel angular extrusion die. Background technique [0002] Large plastic deformation technology (SPD for short), has a strong ability to refine grains, and can directly refine the internal structure of materials to submicron or even nanometer levels. The most promising method for materials. In recent years, large plastic deformation technology has been developed rapidly, mainly including: equal channel angular extrusion (ECAE), high pressure torsion (HPT), reciprocating extrusion (CEC), cumulative rolling (ARB) and so on. Among them, equal-channel angular extrusion and high-pressure torsion have developed the most rapidly due to their excellent thinning ability, but the application of high-pressure torsion is limited due to the small volume of the prepared material, and other processes also have obvious shortcomings. [0003] Fou...

Claims

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Application Information

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IPC IPC(8): B21C25/02B21C29/04
Inventor 路君章桢彦靳丽董杰曾小勤
Owner SHANGHAI JIAO TONG UNIV
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